CK2 is a key regulator of SLC4A2-mediated Cl−/HCO3 − exchange in human airway epithelia

Author:

Ibrahim Salam H.,Turner Mark J.,Saint-Criq Vinciane,Garnett James,Haq Iram J.,Brodlie Malcolm,Ward Chris,Borgo Christian,Salvi Mauro,Venerando Andrea,Gray Michael A.

Funder

Higher Committe for Education Development, Iraq

Medical Research Council

Cystic Fibrosis Trust

Medical Research Foundation

Wellcome Trust

Italian Cystic Fibrosis Research Foundation

Publisher

Springer Science and Business Media LLC

Subject

Physiology (medical),Clinical Biochemistry,Physiology

Reference67 articles.

1. Al-Bazzaz FJ, Hafez N, Tyagi S, Gailey CA, Toofanfard M, Alrefai WA, Nazir TM, Ramaswamy K, Dudeja PK (2001) Detection of Cl--HCO3- and Na+−H+ exchangers in human airways epithelium. JOP 2:285–290

2. Alper SL, Darman RB, Chernova MN, Dahl NK (2002) The AE gene family of Cl/HCO3- exchangers. J Nephrol 15(Suppl 5):S41–S53

3. Arrigoni G, Marin O, Pagano MA, Settimo L, Paolin B, Meggio F, Pinna LA (2004) Phosphorylation of calmodulin fragments by protein kinase CK2. Mechanistic aspects and structural consequences. Biochemistry 43:12788–12798. doi: 10.1021/bi049365c

4. Ballard ST, Trout L, Bebok Z, Sorscher EJ, Crews A (1999) CFTR involvement in chloride, bicarbonate, and liquid secretion by airway submucosal glands. Am J Phys 277:L694–L699

5. Bhaskar KR, Gong DH, Bansil R, Pajevic S, Hamilton JA, Turner BS, LaMont JT (1991) Profound increase in viscosity and aggregation of pig gastric mucin at low pH. Am J Phys 261:G827–G832

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